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Non-destructive and non-contacting stress-strain characterization of aerospace metallic alloys using photo-thermo-mechanical radiometry

机译:用光热机械辐射法表征航空航天金属合金的非破坏性和非接触应力应变

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摘要

A photo-thermo-mechanical non-destructive inspection methodology was developed theoretically and experimentally for non-contact, non-destructive evaluation of mechanical stress-strain relations in metallic materials. A one-dimensional thermal-wave model modified to include mechanical stress explicitly was used to fit experimental data from both frequency scan and stress scan tests and determine the thermal effusivity and diffusivity of an aerospace-industry-relevant aluminum 6061 alloy. Within the elastic regime the thermal conductivity values measured from both photothermal radiometry (PTR) amplitude and phase showed very good agreement, thereby establishing the self-consistency of the new photo-thermo-mechanical radiometry (PTMR) method. Furthermore, a linear conductivity-stress dependence was found, thus establishing the dominant role this property plays in the ability of PTMR to monitor mechanical changes in the aluminum alloy. It was demonstrated that PTMR can be used as a non-contact "strain gauge" within and far beyond the operational strain range of commercial strain gauges, up to the fracture point. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在理论和实验上开发了一种光热机械无损检测方法,用于金属材料中机械应力-应变关系的非接触,无损评估。使用一维热波模型修改为明确包含机械应力,以拟合来自频率扫描和应力扫描测试的实验数据,并确定与航空航天相关的铝6061合金的热效率和扩散率。在弹性范围内,从光热辐射法(PTR)幅度和相位测量的热导率值显示出很好的一致性,从而建立了新的光热机械辐射法(PTMR)方法的自洽性。此外,发现了线性电导率-应力依赖性,因此确立了该性能在PTMR监测铝合金机械变化的能力中起的主导作用。事实证明,PTMR可以用作非接触式“应变仪”,并且可以在商业应变仪的工作应变范围之内甚至远超过断裂点。 (C)2016 Elsevier Ltd.保留所有权利。

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